Product Description
The CNC lathe is a high-precision and high-efficiency automated machine tool with a wide range of application fields and significant technological advantages.
Product structure and features-frame and torque diagram
Machine layout: The two guide rails of the inclined bed CNC lathe intersect with the ground plane, forming a sloping surface with angles usually 30 °, 45 °, 60 °, and 75 °. This design allows for a longer X-direction drag plate on the inclined bed compared to the flat bed, with the same guide rail width, allowing for more tool positions to be arranged.
Cutting rigidity: The cross-sectional area of the inclined bed CNC lathe is larger than that of the same specification flat bed, which has stronger resistance to bending and torsion. This makes the machine tool more stable during the machining process, reduces vibration, and improves machining accuracy.
Chip removal capability: The design of the inclined bed CNC lathe is conducive to chip removal, and the iron chips under cutting are not easily entangled with the tool. With the automatic chip removal device, the chips can be automatically removed, increasing the effective working time of workers.
Automation and efficiency: Equipped with multi station turret or power turret, it has a wide range of process performance and can process complex workpieces such as straight lines, cylinders, oblique cylinders, arcs, and various threads, grooves, worms, etc. It has various compensation functions for straight line interpolation and arc interpolation, suitable for mass production of complex parts.
High precision machining: The layout of the inclined bed CNC lathe directly affects the clearance of the X-direction ball screw, and gravity acts directly on the axial direction of the screw, which helps to improve machining accuracy and stability.
Multifunctionality: Modern inclined bed CNC lathes are usually equipped with multi axis systems, which can perform multi-directional machining. They can not only perform traditional turning, but also complex machining operations such as milling and drilling, improving the overall machining capability of the machine tool.
Casting treatment
Tempering treatment in casting factory
Aging treatment in factory more than 180 days
High rigidity and high speed linear guide way ensure machine more stable and precision
Headstock hole boring by special purpose machine;
Diameter error within 0.005mm. Roundness error within 0.002mm
Spindle noise not more than 80dB
Spindle temperature rise within22 ºC
The temperature difference within 5 ºC
High-end testing equipments
Each machine will be inspected by laser interferometers before delivery
Machine model |
TSL8S |
Max swing over bed |
Φ470mm |
Swing dia. over slide |
Φ208mm |
Turnning diameter |
DiscΦ295mm |
Turnning Langth |
305mm |
X travel |
165mm |
Z travel |
308mm |
X/Z fast moving speed |
X/Z:20/20m/min |
Spindle max speed |
4500rpm |
Spindle model |
A2-5 |
Spindle taper |
MT6 |
Spindle hole diameter |
Φ50mm |
Through bar diameter |
Φ40mm |
Tailstock travel |
80mm |
Tailstock daimeter |
Φ75mm |
Tailstock taper |
MT4 |
Turret |
8T/80 servo turret |
Square tool size |
25*25 |
Boring tool diameter |
Φ32 |
Chuck size |
8 inch hollow hydraulic chuck |
Overall dimension |
2670*1780*2020mm |
Net weight |
2800kg |
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